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November 19, 2007The Journal of Experimental Medicine2,300 citationsOpen Access

The healing myocardium sequentially mobilizes two monocyte subsets with divergent and complementary functions

MNMatthias NahrendorfFŚFilip K. ŚwirskiEAElena Aïkawa

Key Points

  • To investigate whether distinct circulating monocyte subsets perform specialized, sequential roles in cardiac tissue healing and remodeling following myocardial infarction.
  • Evaluated mouse models of myocardial infarction and ischemic cardiac injury.

Structured PICO

P
Population
Mice with myocardial infarction (MI) and atherosclerotic mice
O
Outcome
Monocyte subset recruitment and function during myocardial healing

Myocardial healing after infarction relies on a coordinated, biphasic recruitment of distinct monocyte subsets, identifying cellular targets that could influence ventricular remodeling.

Abstract

Healing of myocardial infarction (MI) requires monocytes/macrophages. These mononuclear phagocytes likely degrade released macromolecules and aid in scavenging of dead cardiomyocytes, while mediating aspects of granulation tissue formation and remodeling. The mechanisms that orchestrate such divergent functions remain unknown. In view of the heightened appreciation of the heterogeneity of circulating monocytes, we investigated whether distinct monocyte subsets contribute in specific ways to myocardial ischemic injury in mouse MI. We identify two distinct phases of monocyte participation after MI and propose a model that reconciles the divergent properties of these cells in healing. Infarcted hearts modulate their chemokine expression profile over time, and they sequentially and actively recruit Ly-6Chi and -6Clo monocytes via CCR2 and CX3CR1, respectively. Ly-6Chi monocytes dominate early (phase I) and exhibit phagocytic, proteolytic, and inflammatory functions. Ly-6Clo monocytes dominate later (phase II), have attenuated inflammatory properties, and express vascular–endothelial growth factor. Consequently, Ly-6Chi monocytes digest damaged tissue, whereas Ly-6Clo monocytes promote healing via myofibroblast accumulation, angiogenesis, and deposition of collagen. MI in atherosclerotic mice with chronic Ly-6Chi monocytosis results in impaired healing, underscoring the need for a balanced and coordinated response. These observations provide novel mechanistic insights into the cellular and molecular events that regulate the response to ischemic injury and identify new therapeutic targets that can influence healing and ventricular remodeling after MI.

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Cite This Study

Nahrendorf et al. (2007) studied this question.

synapsesocial.com/papers/698eb695907fb593d003c67chttps://doi.org/10.1084/jem.20070885
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